The field to which the disclosure generally relates to includes vehicle cooling systems.
Vehicles may include various cooling systems.
A number of variations may include a vehicle system which includes an engine. The vehicle system may also include a phase change material (PCM) which may be disposed in a phase change material device. The phase change material may be released into a vehicle cooling system upon user command. The PCM device may be constructed and arranged to increase a temperature of a vehicle cabin without the engine being turned on when the phase change material is released.
A number of other variations may include a method which may include providing a phase change material which may be disposed in a phase change material device. The phase change material device may be constructed and arranged to preheat a vehicle cabin prior to a vehicle engine being activated.
A number of other variations may include a method of heating a vehicle cabin which may include first providing a phase change material wherein the phase change material may be disposed in a phase change material device. Next, the phase change material may be activated upon a user command. Activating the phase change material may cause an increase in temperature in the vehicle cabin while a vehicle engine may not be activated.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
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The vehicle system 10 may also include a cabin heater 28 which may be constructed and arranged to provide heat. Additionally the HVAC system 14 may include an evaporator 29. It is contemplated that the HVAC system 14 may be constructed and arranged to blow heat from the cabin heater 28, through the evaporator 29, into the vehicle cabin 26. Moreover, the vehicle system 10 may include at least one control device 30. The at least one control device 30 may be a valve, a bypass valve, a thermostatic device or another control device as known by one of ordinary skill in the art. It is contemplated, as illustrated in
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In operation, it is contemplated that during a previous running of the vehicle engine 16, heat energy may be harvested from a source through a form of a heat exchanger. The source from which the heat energy may be harvested may be a cooling system, oil system, liquid system, fluid system, exhaust system or other vehicle system as known by one of ordinary skill in the art. It is contemplated that the heat energy may then be stored in the phase change material 42 which may be disposed in the PCM storage device 40. Additionally it is contemplated that the heat energy may be stored in the phase change material 42 for up to approximately 72 hours, for example up to 48 hours or up to 28 hours. The user may activate the vehicle system 10 within the vehicle, or remotely. When the system 10 is activated, the system 10 may use the cooling system or exhaust system which may be connected to the PCM device 40 in order to transfer the heat from the phase change material 42 through the cooling system and into the cabin heater 28. It is contemplated that an electric coolant pump 22 may be used in order to help move the fluid through the cooling system. Additionally it is contemplated that any other form of pump may be used to move the fluid through the cooling system. Once the heat is transferred to the cabin heater 28, the vehicle HVAC system 14 may be switched on in order to transfer the heat from the cabin heater 28 into the vehicle cabin 26.
Moreover, it is contemplated that the PCM device 40 may be directly attached to the HVAC system 14 which may bypass the cooling system and cabin heater 28. Since the vehicle engine 16 is not turned on or activated during the heating of the vehicle cabin or during operation of the vehicle system, no fuel is consumed during operation of the vehicle system 10 and further no fuel or other emissions are released into the atmosphere during the warming phase of the vehicle.
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The following description of variants is only illustrative of components, elements, acts, product and methods considered to be within the scope of the invention and are not in any way intended to limit such scope by what is specifically disclosed or not expressly set forth. The components, elements, acts, product and methods as described herein may be combined and rearranged other than as expressly described herein and still are considered to be within the scope of the invention.
Variation 1 may include a vehicle system which may include a phase change material device which may be operably coupled to a vehicle HVAC system. Additionally, the PCM device may be configured to transfer heat energy to the HVAC system without activating a vehicle engine.
Variation 2 may include the vehicle system as set forth in Variation 1 wherein the PCM device may be charged during previous operation of the vehicle engine.
Variation 3 may include the vehicle system as set forth in any of Variations 1-2 wherein the PCM device may be constructed and arranged to store heat energy.
Variation 4 may include the vehicle system as set forth in any of Variations 1-3 wherein the heat may be transferred from the PCM device to the HVAC system upon a user command.
Variation 5 may include the vehicle system as set forth in any of Variations 1-4 wherein the heat may be transferred from the HVAC system to a vehicle cabin.
Variation 6 may include vehicle system as set forth in any of Variations 1-5 and may further include a cooling system which may be operably coupled to the PCM device.
Variation 7 may include the vehicle system as set forth in any of Variations 1-6 wherein the cooling system may be constructed and arranged to transfer the heat energy from the PCM device to the HVAC system.
Variation 8 may include a method which may include harvesting heat energy while a vehicle engine is running. Next, the vehicle engine may be turned off. The heat energy may then be stored in a phase change material device. Additionally, the heat energy from the PCM device may be discharged upon a user command. The heat energy may then be transferred to a cabin heater. Finally, a blower may be operated in order to transfer the heat energy into a vehicle cabin which may warm the vehicle cabin while the vehicle engine is off.
Variation 9 may include the method as set forth in Variation 8, moreover a cooling system may be operably coupled to the PCM device.
Variation 10 may include the method as set forth in any of Variations 8 or 9 wherein the cooling system may be constructed and arranged transfer the heat energy from the PCM device to the HVAC system.
Variation 11 may include the method as set forth in any of Variations 8-10 wherein the user command may be given remotely.
Variation 12 may include the method as set forth in any of Variations 8-11 wherein no fuel may be consumed during warming of the vehicle cabin.
Variation 13 may include the method as set forth in any of Variations 8-12 wherein no emissions may be produced during warming of the vehicle cabin.
Variation 14 may include a method of warming a vehicle cabin without starting a vehicle engine and may include first harvesting heat energy during a previous running of the vehicle engine. Next, the heat energy may be stored in a phase change material device. Next, the heat energy may be discharged from the PCM device upon a user command. Finally, the heat energy may be used to heat the vehicle cabin.
Variation 15 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in Variation 14 and may further include transferring the heat energy to a cabin heater.
Variation 16 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in any of Variations 14 or 15 and may further include operating a blower in order to transfer the heat energy into the vehicle cabin.
Variation 17 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in any of Variations 14-16 and may further include operating a cooling system, wherein the cooling system may be constructed and arranged to transfer the heat energy from the PCM device to the HVAC system.
Variation 18 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in any of Variations 14-17 wherein the user command may be given remotely.
Variation 19 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in any of Variations 14-18 wherein no fuel may be consumed during warming of the vehicle cabin.
Variation 20 may include the method of warming a vehicle cabin without starting a vehicle engine as set forth in any of Variations 14-19 wherein no emissions may be produced during warming of the vehicle cabin.
The above description of select variations within the scope of the invention is merely illustrative in nature and, thus, variations or variants thereof are not to be regarded as a departure from the spirit and scope of the invention.
This application claims the benefit of the U.S. Provisional Application No. 62/138,714 filed Mar. 26, 2015 and U.S. Provisional Application No. 62/142,281 filed Apr. 2, 2015.
Filing Document | Filing Date | Country | Kind |
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PCT/US2016/023024 | 3/18/2016 | WO | 00 |
Number | Date | Country | |
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62138714 | Mar 2015 | US | |
62142281 | Apr 2015 | US |